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PHYSIOLOGICAL ASPECTS OF METAL TOLERANCE IN PSEUDOMONAS BACTERIA ISOLATED FROM POLLUTED SITES IN OSTRAVA, CZECH REPUBLIC
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Anzai Y. & Kim H. & Park J.-Y. & Wakabayashi H. & Oyaizu H. Phylogenetic affiliation of the pseudomonads based on 16S rRNA sequence. International Journal of Systematic and Evolutionary Microbiology, vol. 50, pp. 1563-1589, 2000.
Alexander M. Biodegradation and Bioremediation. Academic Press, San Diego, USA, 1994.
Czech Collection of Microbiology: Oživování kultur ze želatinových disků (metodický postup). http://www.sci.muni.cz/ccm/downl/oziv_GD.pdf
Filali B. K. & Taoufik J. & Zeroual Y. & Dzairi F. Z. & Talbi M. & Blaghen M. Waste water bacterial isolates resistant to heavy metals and antibiotics. Current Microbiology, vol. 41, pp. 151-156, 2000.
Haefeli C. & Franklin C. & Hardy K. Plasmid-determined silver resistance in Pseudomonas stutzeri isolated from a silver mine. Journal of Bacteriology, vol. 158, pp. 389-392, 1984.
Hal'ama D. & Augustín J. Degradation of aromatic hydrocarbons and derivatives by microorganisms. I. Metabolic pattern of a new isolated bacterial strain Pseudomonas putida. Biológia, vol. 35, pp. 889-896, 1980.
Chakrabarty A. M. Plasmids in Pseudomonas. Annual Review of Genetics, vol. 10, pp. 7-30, 1976.
Janáková I. & Vojtková, H. Adaptation of bacterial strain for the elimination of heavy metals in the sediments of Cerny Prikop. 2nd International Conference Biotechnology & Metals: 22. – 23. 9. 2011, Košice, Slovakia. Košice: Slovac Academy of Sciences – Kosice, pp. 29-33, 2011.
Keramati P. & Hoodaji M. & Tahmourespour A. Multi-metal resistance study of bacteria highly resistant to mercury isolated from dental clinic effluent. African Journal of Microbiology Research, vol. 5, pp. 831-837, 2011.
Kersters K. & Ludwig W. & Vancanneyt M. & De-Vos P. & Gillis M. & Schleifer K. H. Recentchange in the classification of the pseudomonads: an overview. Systematic and Applied Microbiology, vol. 19, pp. 465-477, 1996.
Malik A. & Aleem A. Incidence of metal and antibiotic resistance in Pseudomonas sp. from the river water, agricultural soil irrigated with wastewater and groundwater. Environmental Monitoring and Assessment, vol. 178, pp. 293-308, 2011. SGEM2012 - DOI: 10.5593/sgem2012 www.sgem.org Soils
Molaei S. & Yaghmaei S. & Ghobadi Z. A study of Acidithiobacillus ferrooxidans DSMZ 583 adaptation to heavy metals. Iranian Journal of Biotechnology, vol. 9, pp. 133-144, 2011.
Nakahara H. & Ishikawa T. & Sarai Y. & Kondo I. & Kozokue H. & Silver S. Linkage of mercury, cadmium and arsenate and drug resistance in clinical isolates of Pseudomonas aeruginosa. Applied and Environmental Microbiology, vol. 33, pp. 975- 976, 1977.
Palleroni N. J. Pseudomonas classification. Antonie van Leeuwenhoek, vol. 64, pp. 231-251, 1993.
Ramos R. J. Pseudomonas Volume 1. Genomics, life style and molecular architecture. Springer-Verlag, New York, USA, 2004.
Robinson N. J. & Whitehall S. K. & Clavet J. S. Microbial metallotioneins. Advances in Microbial Physiology, vol. 44, pp. 183-213, 2001.
Sedlá ček I. Biochemical and physiological properties of gram-negative non- fermenting rods. Remedia Klinická Mikrobiologie, vol. 3, pp. 89-93, 2000.
Shoeb, E. Genetic basic of heavy me tal tolerance in bacteria. Ph.D. thesis, University of Karachi, Pakistan, 2006.
Silver S. & Mistra T. K. Plasmid-mediated heavy metal resistances. Annual Review of Microbiology, vol. 42, pp. 717-743, 1988.
Spiers A. J. & Buckling A. & Rainey P. B. The causes of Pseudomonas diversity. Microbiology, vol. 146, pp. 2345-2350, 2000.
Timmis K. N. Pseudomonas putida: a cosmopolitan opportunist par excellence. Evnironmental Microbiology, vol. 4, pp. 779-781, 2002.
Wong P. K. & Lam K. C. & So C. M. Removal and recovery of Cu(II) from industrial effluent by immobilized cells of Pseudomonas putida II-11. Applied Microbiology and Biotechnology, vol. 39, pp. 127-131, 1993. SGEM2012 - DOI: 10.5593/sgem2012 www.sgem.org 12th International Multidisciplinary Scientific GeoConference SGEM 2012 SGEM2012 - www.sgem.org
Anzai Y. & Kim H. & Park J.-Y. & Wakabayashi H. & Oyaizu H. Phylogenetic affiliation of the pseudomonads based on 16S rRNA sequence. International Journal of Systematic and Evolutionary Microbiology, vol. 50, pp. 1563-1589, 2000.
Alexander M. Biodegradation and Bioremediation. Academic Press, San Diego, USA, 1994.
Czech Collection of Microbiology: Oživování kultur ze želatinových disků (metodický postup). http://www.sci.muni.cz/ccm/downl/oziv_GD.pdf
Filali B. K. & Taoufik J. & Zeroual Y. & Dzairi F. Z. & Talbi M. & Blaghen M. Waste water bacterial isolates resistant to heavy metals and antibiotics. Current Microbiology, vol. 41, pp. 151-156, 2000.
Haefeli C. & Franklin C. & Hardy K. Plasmid-determined silver resistance in Pseudomonas stutzeri isolated from a silver mine. Journal of Bacteriology, vol. 158, pp. 389-392, 1984.
Hal'ama D. & Augustín J. Degradation of aromatic hydrocarbons and derivatives by microorganisms. I. Metabolic pattern of a new isolated bacterial strain Pseudomonas putida. Biológia, vol. 35, pp. 889-896, 1980.
Chakrabarty A. M. Plasmids in Pseudomonas. Annual Review of Genetics, vol. 10, pp. 7-30, 1976.
Janáková I. & Vojtková, H. Adaptation of bacterial strain for the elimination of heavy metals in the sediments of Cerny Prikop. 2nd International Conference Biotechnology & Metals: 22. – 23. 9. 2011, Košice, Slovakia. Košice: Slovac Academy of Sciences – Kosice, pp. 29-33, 2011.
Keramati P. & Hoodaji M. & Tahmourespour A. Multi-metal resistance study of bacteria highly resistant to mercury isolated from dental clinic effluent. African Journal of Microbiology Research, vol. 5, pp. 831-837, 2011.
Kersters K. & Ludwig W. & Vancanneyt M. & De-Vos P. & Gillis M. & Schleifer K. H. Recentchange in the classification of the pseudomonads: an overview. Systematic and Applied Microbiology, vol. 19, pp. 465-477, 1996.
Malik A. & Aleem A. Incidence of metal and antibiotic resistance in Pseudomonas sp. from the river water, agricultural soil irrigated with wastewater and groundwater. Environmental Monitoring and Assessment, vol. 178, pp. 293-308, 2011. SGEM2012 - DOI: 10.5593/sgem2012 www.sgem.org Soils
Molaei S. & Yaghmaei S. & Ghobadi Z. A study of Acidithiobacillus ferrooxidans DSMZ 583 adaptation to heavy metals. Iranian Journal of Biotechnology, vol. 9, pp. 133-144, 2011.
Nakahara H. & Ishikawa T. & Sarai Y. & Kondo I. & Kozokue H. & Silver S. Linkage of mercury, cadmium and arsenate and drug resistance in clinical isolates of Pseudomonas aeruginosa. Applied and Environmental Microbiology, vol. 33, pp. 975- 976, 1977.
Palleroni N. J. Pseudomonas classification. Antonie van Leeuwenhoek, vol. 64, pp. 231-251, 1993.
Ramos R. J. Pseudomonas Volume 1. Genomics, life style and molecular architecture. Springer-Verlag, New York, USA, 2004.
Robinson N. J. & Whitehall S. K. & Clavet J. S. Microbial metallotioneins. Advances in Microbial Physiology, vol. 44, pp. 183-213, 2001.
Sedlá ček I. Biochemical and physiological properties of gram-negative non- fermenting rods. Remedia Klinická Mikrobiologie, vol. 3, pp. 89-93, 2000.
Shoeb, E. Genetic basic of heavy me tal tolerance in bacteria. Ph.D. thesis, University of Karachi, Pakistan, 2006.
Silver S. & Mistra T. K. Plasmid-mediated heavy metal resistances. Annual Review of Microbiology, vol. 42, pp. 717-743, 1988.
Spiers A. J. & Buckling A. & Rainey P. B. The causes of Pseudomonas diversity. Microbiology, vol. 146, pp. 2345-2350, 2000.
Timmis K. N. Pseudomonas putida: a cosmopolitan opportunist par excellence. Evnironmental Microbiology, vol. 4, pp. 779-781, 2002.
Wong P. K. & Lam K. C. & So C. M. Removal and recovery of Cu(II) from industrial effluent by immobilized cells of Pseudomonas putida II-11. Applied Microbiology and Biotechnology, vol. 39, pp. 127-131, 1993. SGEM2012 - DOI: 10.5593/sgem2012 www.sgem.org 12th International Multidisciplinary Scientific GeoConference SGEM 2012 SGEM2012 - www.sgem.org
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